首页> 外文会议>SPIE Defense + Security Conference >Evaluation of the on-orbit response versus scan-angle (RVS) performance for the MODIS reflective solar bands using multiple ground targets
【24h】

Evaluation of the on-orbit response versus scan-angle (RVS) performance for the MODIS reflective solar bands using multiple ground targets

机译:使用多个地面目标评估MODIS反射太阳波段的在轨响应与扫描角(RVS)性能

获取原文

摘要

The reflective solar bands (RSB) of the MODIS instruments on the Terra and Aqua spacecraft support a variety of science applications. The RSB are primarily calibrated using regularly scheduled solar diffuser (SD) and lunar observations. As the instruments continue to operate beyond their designed life, significant degradation of the instrument gain is observed, particularly at the short wavelengths. In recent years, the onboard calibrators are insufficient in accurately characterizing the response versus scan-angle (RVS) for the RSB. Therefore, the MODIS Characterization Support Team (MCST) has implemented an enhanced approach whereby the on-board measurements are supplemented by observations of the pseudo-invariant calibration sites in Northern Africa to better characterize the on-orbit RVS changes in Level IB Collection 6 and Collection 6.1 for select short and near-infrared bands of both MODIS instruments. This paper explores the use of alternative Earth-scene targets to characterize the on-orbit RVS. In particular, an alternative version of the on-orbit RVS, with the desert data substituted with the measurements from deep convective clouds (DCC). has been formulated and implemented. Results from this version are compared with the operational C6.1 algorithm. The long-term reflectance trends from the Dome Concordia (Dome C) site in Antarctica are derived using both versions and evaluated for long-term stability for independent assessments. Due to the Earth-scene saturation from the high-gain bands, the paper only focusses on the comparisons for bands 1, 3 and 4 of both MODIS instruments. This study finds that DCC can be used as alternative invariant ground targets in MODIS RVS characterization for these bands.
机译:Terra和Aqua航天器上的MODIS仪器的反射太阳能带(RSB)支持多种科学应用。 RSB主要使用定期计划的太阳漫射器(SD)和月球观测值进行校准。随着仪器继续在其设计寿命范围内工作,尤其是在短波长下,仪器增益会显着下降。近年来,机载校准器不足以准确地表征RSB的响应与扫描角度(RVS)。因此,MODIS特征描述支持小组(MCST)实施了一种增强的方法,通过对北非拟不变定标点的观测补充了机载测量值,以更好地描述IB级6级和6级轨道上RVS的变化。两种MODIS仪器的选定短波段和近红外波段的6.1集合。本文探讨了使用替代性地球现场目标来表征在轨RVS的特征。特别是在轨RVS的替代版本,沙漠数据被深对流云(DCC)的测量值所代替。已经制定并实施。该版本的结果与可操作的C6.1算法进行了比较。使用这两种版本得出了南极穹顶Concordia(Dome C)站点的长期反射趋势,并对其长期稳定性进行了评估,以进行独立评估。由于高增益频段的地球现场饱和,本文仅着重于两种MODIS仪器的频段1、3和4的比较。这项研究发现,DCC可用作MODIS RVS表征这些频段的替代不变地面目标。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号